Kligun Efrat, Mandel-Gutfreund Yael
a Department of Biology; Technion - Israel Institute of Technology ; Haifa , Israel.
RNA Biol. 2015;12(7):720-7. doi: 10.1080/15476286.2015.1040977.
Interactions between protein and RNA play a key role in many biological processes in the gene expression pathway. Those interactions are mediated through a variety of RNA-binding protein domains, among them the highly abundant RNA recognition motif (RRM). Here we studied protein-RNA complexes from different RNA binding domain families solved by NMR and x-ray crystallography. Characterizing the structural properties of the RNA at the binding interfaces revealed an unexpected number of nucleotides with unusual RNA conformations, specifically found in RNA-RRM complexes. Moreover, we observed that the RNA nucleotides that are directly involved in interactions with the RRM domains, via hydrogen bonds and hydrophobic contacts, are significantly enriched with unique RNA conformations. Further examination of the sequences binding the RRM domain showed a preference for G nucleotides in syn conformation to precede or to follow U nucleotides in the anti-conformation, and U nucleotides in C2' endo conformation to precede U and G nucleotides possessing the more common C3' endo conformation. These findings imply a possible mode of RNA recognition by the RRM domains which enables the recognition of a wide variety of different RNA sequences and shapes. Overall, this study suggests an additional way by which the RRM domain recognizes its RNA target, involving a conformational readout.
蛋白质与RNA之间的相互作用在基因表达途径的许多生物学过程中起着关键作用。这些相互作用是通过多种RNA结合蛋白结构域介导的,其中高度丰富的RNA识别基序(RRM)尤为重要。在这里,我们研究了通过核磁共振(NMR)和X射线晶体学解析的来自不同RNA结合结构域家族的蛋白质-RNA复合物。对结合界面处RNA的结构特性进行表征后发现,有数量意外的核苷酸具有异常的RNA构象,这在RNA-RRM复合物中尤为明显。此外,我们观察到,通过氢键和疏水接触直接参与与RRM结构域相互作用的RNA核苷酸,显著富集了独特的RNA构象。对与RRM结构域结合的序列进行进一步研究发现,在顺式构象中的G核苷酸倾向于在反式构象中的U核苷酸之前或之后出现,而处于C2'内式构象的U核苷酸倾向于在具有更常见C3'内式构象的U和G核苷酸之前出现。这些发现暗示了RRM结构域识别RNA的一种可能模式,这种模式能够识别多种不同的RNA序列和形状。总的来说,这项研究提出了RRM结构域识别其RNA靶标的另一种方式,即涉及构象读出。